| Literature DB >> 25827016 |
Yujia Liu1,2, Xiaoyu Ji3, Xianguang Nie1, Min Qu2, Lei Zheng1, Zilong Tan3, Huimin Zhao1, Lin Huo3, Shengnan Liu1, Bing Zhang1, Yucheng Wang1.
Abstract
Plant basic helix-loop-helix (bHLH) transcription factors play essential roles in abiotic stress tolerance. However, most bHLHs have not been functionally characterized. Here, we characterized the functional role of a bHLH transcription factor from Arabidopsis, AtbHLH112, in response to abiotic stress. AtbHLH112 is a nuclear-localized protein, and its nuclear localization is induced by salt, drought and abscisic acid (ABA). In addition, AtbHLH112 serves as a transcriptional activator, with the activation domain located at its N-terminus. In addition to binding to the E-box motifs of stress-responsive genes, AtbHLH112 binds to a novel motif with the sequence 'GG[GT]CC[GT][GA][TA]C' (GCG-box). Gain- and loss-of-function analyses showed that the transcript level of AtbHLH112 is positively correlated with salt and drought tolerance. AtbHLH112 mediates stress tolerance by increasing the expression of P5CS genes and reducing the expression of P5CDH and ProDH genes to increase proline levels. AtbHLH112 also increases the expression of POD and SOD genes to improve reactive oxygen species (ROS) scavenging ability. We present a model suggesting that AtbHLH112 is a transcriptional activator that regulates the expression of genes via binding to their GCG- or E-boxes to mediate physiological responses, including proline biosynthesis and ROS scavenging pathways, to enhance stress tolerance.Entities:
Keywords: Arabidopsis thaliana; AtbHLH112; GCG-box motif; abiotic stress; transcriptional regulation
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Year: 2015 PMID: 25827016 DOI: 10.1111/nph.13387
Source DB: PubMed Journal: New Phytol ISSN: 0028-646X Impact factor: 10.151